1) high speed wire drawing
高速拉制
1.
The application of the lubricant, which is presented in this article, shows that it is suitable for high speed wire drawing and has advantageous effect on the brightness of the wire surface, the life of the die and cone and energy saving.
为了满足高速拉制铝单线 ,选用了好富顿公司生产的 CINDOL4683拉丝润滑油。
2) high casting speed
高拉速
1.
Practice on extend in mold copper life of high casting speed slab caster;
延长高拉速板坯连铸机结晶器铜板寿命的实践
2.
Oscillation marks formation for slab continuous casting with high casting speed was expatiated through stress analyses of initial solidifying meniscus shell during an oscillation cycle with stabilizing casting status at 2.
0m/min拉速稳定浇铸时振动周期内弯月面初凝坯壳的受力情况,阐述了高拉速连铸坯表面振痕形成过程,给出振动参数与最大液体摩擦力和最大保护渣渣道动态压力关系;结合振动参数对振动过程参数的影响和实际设备状况,提出了振动参数优化方向,确定了拉速升至2。
3.
A physical model was established to study the mechanism of molten slag behavior in slab continuous casting mould with high casting speed and argon blowing,and the effects of operation parameters on the liquid surface level oscillation and the slag entrapment were investigated.
基于相似理论,利用物理模型研究了高拉速吹氩条件下结晶器内的卷渣行为,考察了工艺操作参数对结晶器内液面波动和卷渣行为的影响。
3) high speed
高拉速
1.
In this paper,by analyzing the requirement of high speed continuous casting mould fluxes properties,the mould fluxes were developed for NO.
根据攀钢2#板坯连铸的工艺特点,在分析了高速连铸对保护渣性能要求的基础上,研究开发出了适应高拉速浇注的连铸保护渣,工业试验结果表明,研究开发的YC-DT高拉速用连铸保护渣,在拉速≥1。
2.
In this paper,the author calculates the solidification coefficient of billet in the case of high speed,It has a practical significance to direct the selection of technological parameters of continuous casting.
计算了高拉速条件下的铸坯凝固系数 ,对于指导高效连铸工艺参数的选择有实际的意义 ,指出由于过热度的存在 ,坯壳的生长不完全服从抛物线规律及高拉速下 ,结晶体内铸坯的凝固系数较高 ,而综合凝固系数变化不
4) high speed drawing
高速拉拔
5) high speed casting
高拉速连铸
1.
Non-sinusoidal oscillation of continuous casting mold is one of the key technologies for high speed casting with high quality.
结晶器非正弦振动是实施高拉速连铸和提高铸坯质量的关键技术。
6) high-speed cold-drawing
高速冷拉拔
补充资料:GHL高速混合制粒机
原理
粉体物料与粘合剂在园筒形容器中由底部混合桨充分混合成湿润软材,然后由侧置的高速粉碎桨切割均匀的湿颗粒。
特点
本机采用卧式园筒构造,结构合理。
充气密封驱动轴,清洗时可切换成水。
流态化造粒,成粒近似球形,流动性好。
较传统工艺减小25%粘合剂,干燥时间缩短。
每批次干混2分钟,造粒1-4分钟,工效比传统工提高4-5倍。
在同一封闭容器内完成,干混-湿混-制粒,工艺缩减,符合GMP规范。
整个操作具有严格的安全保护措施。
工艺流程图
技术参数:
项目 | 规格 | ||||||||
名称 | 单位 | 10 | 50 | 150 | 200 | 250 | 300 | 400 | 600 |
容积 | L | 10 | 50 | 150 | 200 | 250 | 300 | 400 | 600 |
产量 | kg/批 | 3 | 15 | 50 | 80 | 100 | 130 | 200 | 280 |
混合速度 | rpm | 300/600 | 200/400 | 180/270 | 180/270 | 180/270 | 140/220 | 106/155 | 80/120 |
混合功率 | kw | 1.5/2.2 | 4/5.5 | 6.5/8 | 9/11 | 9/11 | 13/16 | 18.5/22 | 22/30 |
切割速度 | rpm | 1500/3000 | 1500/3000 | 1500/3000 | 1500/3000 | 1500/3000 | 1500/3000 | 1500/3000 | 1500/3000 |
切割功率 | kw | 0.85/1.1 | 1.3/1.8 | 2.4/3 | 4.5/5.5 | 4.5/5.5 | 4.5/5.5 | 6.5/8 | 9/11 |
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条